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route.c revision 1.149
      1  1.149     pooka /*	$NetBSD: route.c,v 1.149 2015/08/24 22:21:26 pooka Exp $	*/
      2   1.18       kml 
      3   1.18       kml /*-
      4  1.106        ad  * Copyright (c) 1998, 2008 The NetBSD Foundation, Inc.
      5   1.18       kml  * All rights reserved.
      6   1.18       kml  *
      7   1.18       kml  * This code is derived from software contributed to The NetBSD Foundation
      8   1.18       kml  * by Kevin M. Lahey of the Numerical Aerospace Simulation Facility,
      9   1.18       kml  * NASA Ames Research Center.
     10   1.18       kml  *
     11   1.18       kml  * Redistribution and use in source and binary forms, with or without
     12   1.18       kml  * modification, are permitted provided that the following conditions
     13   1.18       kml  * are met:
     14   1.18       kml  * 1. Redistributions of source code must retain the above copyright
     15   1.18       kml  *    notice, this list of conditions and the following disclaimer.
     16   1.18       kml  * 2. Redistributions in binary form must reproduce the above copyright
     17   1.18       kml  *    notice, this list of conditions and the following disclaimer in the
     18   1.18       kml  *    documentation and/or other materials provided with the distribution.
     19   1.18       kml  *
     20   1.18       kml  * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
     21   1.18       kml  * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
     22   1.18       kml  * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
     23   1.18       kml  * PURPOSE ARE DISCLAIMED.  IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
     24   1.18       kml  * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
     25   1.18       kml  * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
     26   1.18       kml  * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
     27   1.18       kml  * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
     28   1.18       kml  * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
     29   1.18       kml  * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
     30   1.18       kml  * POSSIBILITY OF SUCH DAMAGE.
     31   1.18       kml  */
     32   1.11       cgd 
     33    1.1       cgd /*
     34   1.25    itojun  * Copyright (C) 1995, 1996, 1997, and 1998 WIDE Project.
     35   1.25    itojun  * All rights reserved.
     36   1.65     perry  *
     37   1.25    itojun  * Redistribution and use in source and binary forms, with or without
     38   1.25    itojun  * modification, are permitted provided that the following conditions
     39   1.25    itojun  * are met:
     40   1.25    itojun  * 1. Redistributions of source code must retain the above copyright
     41   1.25    itojun  *    notice, this list of conditions and the following disclaimer.
     42   1.25    itojun  * 2. Redistributions in binary form must reproduce the above copyright
     43   1.25    itojun  *    notice, this list of conditions and the following disclaimer in the
     44   1.25    itojun  *    documentation and/or other materials provided with the distribution.
     45   1.25    itojun  * 3. Neither the name of the project nor the names of its contributors
     46   1.25    itojun  *    may be used to endorse or promote products derived from this software
     47   1.25    itojun  *    without specific prior written permission.
     48   1.65     perry  *
     49   1.25    itojun  * THIS SOFTWARE IS PROVIDED BY THE PROJECT AND CONTRIBUTORS ``AS IS'' AND
     50   1.25    itojun  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
     51   1.25    itojun  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
     52   1.25    itojun  * ARE DISCLAIMED.  IN NO EVENT SHALL THE PROJECT OR CONTRIBUTORS BE LIABLE
     53   1.25    itojun  * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
     54   1.25    itojun  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
     55   1.25    itojun  * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
     56   1.25    itojun  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
     57   1.25    itojun  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
     58   1.25    itojun  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
     59   1.25    itojun  * SUCH DAMAGE.
     60   1.25    itojun  */
     61   1.25    itojun 
     62   1.25    itojun /*
     63   1.10   mycroft  * Copyright (c) 1980, 1986, 1991, 1993
     64   1.10   mycroft  *	The Regents of the University of California.  All rights reserved.
     65    1.1       cgd  *
     66    1.1       cgd  * Redistribution and use in source and binary forms, with or without
     67    1.1       cgd  * modification, are permitted provided that the following conditions
     68    1.1       cgd  * are met:
     69    1.1       cgd  * 1. Redistributions of source code must retain the above copyright
     70    1.1       cgd  *    notice, this list of conditions and the following disclaimer.
     71    1.1       cgd  * 2. Redistributions in binary form must reproduce the above copyright
     72    1.1       cgd  *    notice, this list of conditions and the following disclaimer in the
     73    1.1       cgd  *    documentation and/or other materials provided with the distribution.
     74   1.58       agc  * 3. Neither the name of the University nor the names of its contributors
     75    1.1       cgd  *    may be used to endorse or promote products derived from this software
     76    1.1       cgd  *    without specific prior written permission.
     77    1.1       cgd  *
     78    1.1       cgd  * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
     79    1.1       cgd  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
     80    1.1       cgd  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
     81    1.1       cgd  * ARE DISCLAIMED.  IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
     82    1.1       cgd  * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
     83    1.1       cgd  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
     84    1.1       cgd  * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
     85    1.1       cgd  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
     86    1.1       cgd  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
     87    1.1       cgd  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
     88    1.1       cgd  * SUCH DAMAGE.
     89    1.1       cgd  *
     90   1.17  christos  *	@(#)route.c	8.3 (Berkeley) 1/9/95
     91    1.1       cgd  */
     92   1.50     lukem 
     93  1.149     pooka #ifdef _KERNEL_OPT
     94  1.136       roy #include "opt_inet.h"
     95   1.90    dyoung #include "opt_route.h"
     96  1.149     pooka #endif
     97   1.90    dyoung 
     98   1.50     lukem #include <sys/cdefs.h>
     99  1.149     pooka __KERNEL_RCSID(0, "$NetBSD: route.c,v 1.149 2015/08/24 22:21:26 pooka Exp $");
    100    1.2       cgd 
    101    1.5   mycroft #include <sys/param.h>
    102  1.140     ozaki #ifdef RTFLUSH_DEBUG
    103   1.90    dyoung #include <sys/sysctl.h>
    104  1.140     ozaki #endif
    105    1.5   mycroft #include <sys/systm.h>
    106   1.35   thorpej #include <sys/callout.h>
    107    1.5   mycroft #include <sys/proc.h>
    108    1.5   mycroft #include <sys/mbuf.h>
    109    1.5   mycroft #include <sys/socket.h>
    110    1.5   mycroft #include <sys/socketvar.h>
    111    1.5   mycroft #include <sys/domain.h>
    112    1.5   mycroft #include <sys/protosw.h>
    113   1.18       kml #include <sys/kernel.h>
    114    1.5   mycroft #include <sys/ioctl.h>
    115   1.22   thorpej #include <sys/pool.h>
    116  1.119      elad #include <sys/kauth.h>
    117    1.1       cgd 
    118    1.5   mycroft #include <net/if.h>
    119  1.114    dyoung #include <net/if_dl.h>
    120    1.5   mycroft #include <net/route.h>
    121    1.1       cgd 
    122    1.5   mycroft #include <netinet/in.h>
    123    1.5   mycroft #include <netinet/in_var.h>
    124    1.1       cgd 
    125   1.90    dyoung #ifdef RTFLUSH_DEBUG
    126   1.90    dyoung #define	rtcache_debug() __predict_false(_rtcache_debug)
    127   1.90    dyoung #else /* RTFLUSH_DEBUG */
    128   1.90    dyoung #define	rtcache_debug() 0
    129   1.90    dyoung #endif /* RTFLUSH_DEBUG */
    130    1.5   mycroft 
    131   1.52      matt struct	rtstat	rtstat;
    132    1.1       cgd 
    133    1.1       cgd int	rttrash;		/* routes not in table but not freed */
    134    1.1       cgd 
    135  1.113     pooka struct pool rtentry_pool;
    136  1.113     pooka struct pool rttimer_pool;
    137   1.22   thorpej 
    138   1.35   thorpej struct callout rt_timer_ch; /* callout for rt_timer_timer() */
    139   1.35   thorpej 
    140   1.90    dyoung #ifdef RTFLUSH_DEBUG
    141   1.90    dyoung static int _rtcache_debug = 0;
    142   1.90    dyoung #endif /* RTFLUSH_DEBUG */
    143   1.90    dyoung 
    144  1.119      elad static kauth_listener_t route_listener;
    145  1.119      elad 
    146   1.60      matt static int rtdeletemsg(struct rtentry *);
    147   1.92    dyoung static int rtflushclone1(struct rtentry *, void *);
    148   1.92    dyoung static void rtflushclone(sa_family_t family, struct rtentry *);
    149  1.144     ozaki static void rtflushall(int);
    150   1.40    itojun 
    151  1.141     ozaki static void rt_maskedcopy(const struct sockaddr *,
    152  1.141     ozaki     struct sockaddr *, const struct sockaddr *);
    153  1.141     ozaki 
    154  1.144     ozaki static void rtcache_clear(struct route *);
    155  1.144     ozaki static void rtcache_invalidate(struct dom_rtlist *);
    156  1.144     ozaki 
    157   1.90    dyoung #ifdef RTFLUSH_DEBUG
    158  1.118     pooka static void sysctl_net_rtcache_setup(struct sysctllog **);
    159  1.118     pooka static void
    160  1.118     pooka sysctl_net_rtcache_setup(struct sysctllog **clog)
    161   1.90    dyoung {
    162   1.90    dyoung 	const struct sysctlnode *rnode;
    163   1.90    dyoung 
    164   1.90    dyoung 	if (sysctl_createv(clog, 0, NULL, &rnode, CTLFLAG_PERMANENT,
    165   1.90    dyoung 	    CTLTYPE_NODE,
    166   1.90    dyoung 	    "rtcache", SYSCTL_DESCR("Route cache related settings"),
    167  1.128     pooka 	    NULL, 0, NULL, 0, CTL_NET, CTL_CREATE, CTL_EOL) != 0)
    168   1.90    dyoung 		return;
    169   1.90    dyoung 	if (sysctl_createv(clog, 0, &rnode, &rnode,
    170   1.90    dyoung 	    CTLFLAG_PERMANENT|CTLFLAG_READWRITE, CTLTYPE_INT,
    171   1.90    dyoung 	    "debug", SYSCTL_DESCR("Debug route caches"),
    172   1.90    dyoung 	    NULL, 0, &_rtcache_debug, 0, CTL_CREATE, CTL_EOL) != 0)
    173   1.90    dyoung 		return;
    174   1.90    dyoung }
    175   1.90    dyoung #endif /* RTFLUSH_DEBUG */
    176   1.90    dyoung 
    177  1.144     ozaki static inline void
    178  1.144     ozaki rt_destroy(struct rtentry *rt)
    179  1.144     ozaki {
    180  1.144     ozaki 	if (rt->_rt_key != NULL)
    181  1.144     ozaki 		sockaddr_free(rt->_rt_key);
    182  1.144     ozaki 	if (rt->rt_gateway != NULL)
    183  1.144     ozaki 		sockaddr_free(rt->rt_gateway);
    184  1.144     ozaki 	if (rt_gettag(rt) != NULL)
    185  1.144     ozaki 		sockaddr_free(rt_gettag(rt));
    186  1.144     ozaki 	rt->_rt_key = rt->rt_gateway = rt->rt_tag = NULL;
    187  1.144     ozaki }
    188  1.144     ozaki 
    189  1.144     ozaki static inline const struct sockaddr *
    190  1.144     ozaki rt_setkey(struct rtentry *rt, const struct sockaddr *key, int flags)
    191  1.144     ozaki {
    192  1.144     ozaki 	if (rt->_rt_key == key)
    193  1.144     ozaki 		goto out;
    194  1.144     ozaki 
    195  1.144     ozaki 	if (rt->_rt_key != NULL)
    196  1.144     ozaki 		sockaddr_free(rt->_rt_key);
    197  1.144     ozaki 	rt->_rt_key = sockaddr_dup(key, flags);
    198  1.144     ozaki out:
    199  1.144     ozaki 	rt->rt_nodes->rn_key = (const char *)rt->_rt_key;
    200  1.144     ozaki 	return rt->_rt_key;
    201  1.144     ozaki }
    202  1.144     ozaki 
    203   1.81     joerg struct ifaddr *
    204   1.81     joerg rt_get_ifa(struct rtentry *rt)
    205   1.81     joerg {
    206   1.81     joerg 	struct ifaddr *ifa;
    207   1.81     joerg 
    208   1.81     joerg 	if ((ifa = rt->rt_ifa) == NULL)
    209   1.81     joerg 		return ifa;
    210   1.81     joerg 	else if (ifa->ifa_getifa == NULL)
    211   1.81     joerg 		return ifa;
    212   1.81     joerg #if 0
    213   1.81     joerg 	else if (ifa->ifa_seqno != NULL && *ifa->ifa_seqno == rt->rt_ifa_seqno)
    214   1.81     joerg 		return ifa;
    215   1.81     joerg #endif
    216   1.81     joerg 	else {
    217   1.94    dyoung 		ifa = (*ifa->ifa_getifa)(ifa, rt_getkey(rt));
    218  1.145       roy 		if (ifa == NULL)
    219  1.145       roy 			return NULL;
    220   1.81     joerg 		rt_replace_ifa(rt, ifa);
    221   1.81     joerg 		return ifa;
    222   1.81     joerg 	}
    223   1.81     joerg }
    224   1.81     joerg 
    225   1.80     joerg static void
    226   1.80     joerg rt_set_ifa1(struct rtentry *rt, struct ifaddr *ifa)
    227   1.80     joerg {
    228   1.80     joerg 	rt->rt_ifa = ifa;
    229   1.80     joerg 	if (ifa->ifa_seqno != NULL)
    230   1.80     joerg 		rt->rt_ifa_seqno = *ifa->ifa_seqno;
    231   1.80     joerg }
    232   1.80     joerg 
    233  1.116       roy /*
    234  1.116       roy  * Is this route the connected route for the ifa?
    235  1.116       roy  */
    236  1.116       roy static int
    237  1.116       roy rt_ifa_connected(const struct rtentry *rt, const struct ifaddr *ifa)
    238  1.116       roy {
    239  1.116       roy 	const struct sockaddr *key, *dst, *odst;
    240  1.116       roy 	struct sockaddr_storage maskeddst;
    241  1.116       roy 
    242  1.116       roy 	key = rt_getkey(rt);
    243  1.116       roy 	dst = rt->rt_flags & RTF_HOST ? ifa->ifa_dstaddr : ifa->ifa_addr;
    244  1.116       roy 	if (dst == NULL ||
    245  1.116       roy 	    dst->sa_family != key->sa_family ||
    246  1.116       roy 	    dst->sa_len != key->sa_len)
    247  1.116       roy 		return 0;
    248  1.116       roy 	if ((rt->rt_flags & RTF_HOST) == 0 && ifa->ifa_netmask) {
    249  1.116       roy 		odst = dst;
    250  1.116       roy 		dst = (struct sockaddr *)&maskeddst;
    251  1.116       roy 		rt_maskedcopy(odst, (struct sockaddr *)&maskeddst,
    252  1.116       roy 		    ifa->ifa_netmask);
    253  1.116       roy 	}
    254  1.116       roy 	return (memcmp(dst, key, dst->sa_len) == 0);
    255  1.116       roy }
    256  1.116       roy 
    257   1.80     joerg void
    258   1.80     joerg rt_replace_ifa(struct rtentry *rt, struct ifaddr *ifa)
    259   1.80     joerg {
    260  1.116       roy 	if (rt->rt_ifa &&
    261  1.116       roy 	    rt->rt_ifa != ifa &&
    262  1.116       roy 	    rt->rt_ifa->ifa_flags & IFA_ROUTE &&
    263  1.116       roy 	    rt_ifa_connected(rt, rt->rt_ifa))
    264  1.116       roy 	{
    265  1.116       roy 		RT_DPRINTF("rt->_rt_key = %p, ifa = %p, "
    266  1.116       roy 		    "replace deleted IFA_ROUTE\n",
    267  1.116       roy 		    (void *)rt->_rt_key, (void *)rt->rt_ifa);
    268  1.116       roy 		rt->rt_ifa->ifa_flags &= ~IFA_ROUTE;
    269  1.116       roy 		if (rt_ifa_connected(rt, ifa)) {
    270  1.116       roy 			RT_DPRINTF("rt->_rt_key = %p, ifa = %p, "
    271  1.116       roy 			    "replace added IFA_ROUTE\n",
    272  1.116       roy 			    (void *)rt->_rt_key, (void *)ifa);
    273  1.116       roy 			ifa->ifa_flags |= IFA_ROUTE;
    274  1.116       roy 		}
    275  1.116       roy 	}
    276  1.116       roy 
    277  1.133     rmind 	ifaref(ifa);
    278  1.133     rmind 	ifafree(rt->rt_ifa);
    279   1.80     joerg 	rt_set_ifa1(rt, ifa);
    280   1.80     joerg }
    281   1.80     joerg 
    282   1.80     joerg static void
    283   1.80     joerg rt_set_ifa(struct rtentry *rt, struct ifaddr *ifa)
    284   1.80     joerg {
    285  1.133     rmind 	ifaref(ifa);
    286   1.80     joerg 	rt_set_ifa1(rt, ifa);
    287   1.80     joerg }
    288   1.80     joerg 
    289  1.119      elad static int
    290  1.119      elad route_listener_cb(kauth_cred_t cred, kauth_action_t action, void *cookie,
    291  1.119      elad     void *arg0, void *arg1, void *arg2, void *arg3)
    292  1.119      elad {
    293  1.119      elad 	struct rt_msghdr *rtm;
    294  1.119      elad 	int result;
    295  1.119      elad 
    296  1.119      elad 	result = KAUTH_RESULT_DEFER;
    297  1.119      elad 	rtm = arg1;
    298  1.119      elad 
    299  1.120      elad 	if (action != KAUTH_NETWORK_ROUTE)
    300  1.120      elad 		return result;
    301  1.120      elad 
    302  1.119      elad 	if (rtm->rtm_type == RTM_GET)
    303  1.119      elad 		result = KAUTH_RESULT_ALLOW;
    304  1.119      elad 
    305  1.119      elad 	return result;
    306  1.119      elad }
    307  1.119      elad 
    308    1.9   mycroft void
    309  1.124      matt rt_init(void)
    310    1.1       cgd {
    311   1.22   thorpej 
    312  1.118     pooka #ifdef RTFLUSH_DEBUG
    313  1.118     pooka 	sysctl_net_rtcache_setup(NULL);
    314  1.118     pooka #endif
    315  1.118     pooka 
    316  1.113     pooka 	pool_init(&rtentry_pool, sizeof(struct rtentry), 0, 0, 0, "rtentpl",
    317  1.113     pooka 	    NULL, IPL_SOFTNET);
    318  1.113     pooka 	pool_init(&rttimer_pool, sizeof(struct rttimer), 0, 0, 0, "rttmrpl",
    319  1.113     pooka 	    NULL, IPL_SOFTNET);
    320  1.113     pooka 
    321   1.10   mycroft 	rn_init();	/* initialize all zeroes, all ones, mask table */
    322  1.125    dyoung 	rtbl_init();
    323  1.119      elad 
    324  1.119      elad 	route_listener = kauth_listen_scope(KAUTH_SCOPE_NETWORK,
    325  1.119      elad 	    route_listener_cb, NULL);
    326    1.1       cgd }
    327    1.1       cgd 
    328  1.144     ozaki static void
    329   1.82    dyoung rtflushall(int family)
    330   1.82    dyoung {
    331   1.90    dyoung 	struct domain *dom;
    332   1.90    dyoung 
    333   1.90    dyoung 	if (rtcache_debug())
    334   1.90    dyoung 		printf("%s: enter\n", __func__);
    335   1.90    dyoung 
    336   1.90    dyoung 	if ((dom = pffinddomain(family)) == NULL)
    337   1.90    dyoung 		return;
    338   1.82    dyoung 
    339  1.105    dyoung 	rtcache_invalidate(&dom->dom_rtcache);
    340   1.82    dyoung }
    341   1.82    dyoung 
    342  1.131     rmind static void
    343   1.82    dyoung rtcache(struct route *ro)
    344   1.82    dyoung {
    345   1.90    dyoung 	struct domain *dom;
    346   1.82    dyoung 
    347  1.114    dyoung 	rtcache_invariants(ro);
    348   1.99    dyoung 	KASSERT(ro->_ro_rt != NULL);
    349  1.105    dyoung 	KASSERT(ro->ro_invalid == false);
    350   1.90    dyoung 	KASSERT(rtcache_getdst(ro) != NULL);
    351   1.82    dyoung 
    352   1.90    dyoung 	if ((dom = pffinddomain(rtcache_getdst(ro)->sa_family)) == NULL)
    353   1.90    dyoung 		return;
    354   1.90    dyoung 
    355   1.90    dyoung 	LIST_INSERT_HEAD(&dom->dom_rtcache, ro, ro_rtcache_next);
    356  1.114    dyoung 	rtcache_invariants(ro);
    357   1.82    dyoung }
    358   1.82    dyoung 
    359    1.1       cgd /*
    360  1.146     ozaki  * Packet routing routines. If success, refcnt of a returned rtentry
    361  1.146     ozaki  * will be incremented. The caller has to rtfree it by itself.
    362    1.1       cgd  */
    363    1.1       cgd struct rtentry *
    364   1.60      matt rtalloc1(const struct sockaddr *dst, int report)
    365    1.1       cgd {
    366  1.125    dyoung 	rtbl_t *rtbl = rt_gettable(dst->sa_family);
    367   1.36  augustss 	struct rtentry *rt;
    368   1.68  christos 	struct rtentry *newrt = NULL;
    369   1.10   mycroft 	struct rt_addrinfo info;
    370   1.13   mycroft 	int  s = splsoftnet(), err = 0, msgtype = RTM_MISS;
    371    1.1       cgd 
    372  1.125    dyoung 	if (rtbl != NULL && (rt = rt_matchaddr(rtbl, dst)) != NULL) {
    373  1.125    dyoung 		newrt = rt;
    374    1.1       cgd 		if (report && (rt->rt_flags & RTF_CLONING)) {
    375   1.68  christos 			err = rtrequest(RTM_RESOLVE, dst, NULL, NULL, 0,
    376   1.68  christos 			    &newrt);
    377    1.8       cgd 			if (err) {
    378    1.8       cgd 				newrt = rt;
    379    1.8       cgd 				rt->rt_refcnt++;
    380    1.8       cgd 				goto miss;
    381    1.8       cgd 			}
    382   1.69  christos 			KASSERT(newrt != NULL);
    383  1.129      maxv 			rt = newrt;
    384  1.129      maxv 			if (rt->rt_flags & RTF_XRESOLVE) {
    385    1.8       cgd 				msgtype = RTM_RESOLVE;
    386    1.8       cgd 				goto miss;
    387    1.8       cgd 			}
    388   1.39    itojun 			/* Inform listeners of the new route */
    389   1.44   thorpej 			memset(&info, 0, sizeof(info));
    390   1.94    dyoung 			info.rti_info[RTAX_DST] = rt_getkey(rt);
    391   1.39    itojun 			info.rti_info[RTAX_NETMASK] = rt_mask(rt);
    392   1.39    itojun 			info.rti_info[RTAX_GATEWAY] = rt->rt_gateway;
    393   1.39    itojun 			if (rt->rt_ifp != NULL) {
    394   1.65     perry 				info.rti_info[RTAX_IFP] =
    395   1.99    dyoung 				    rt->rt_ifp->if_dl->ifa_addr;
    396   1.39    itojun 				info.rti_info[RTAX_IFA] = rt->rt_ifa->ifa_addr;
    397   1.39    itojun 			}
    398   1.39    itojun 			rt_missmsg(RTM_ADD, &info, rt->rt_flags, 0);
    399    1.1       cgd 		} else
    400    1.1       cgd 			rt->rt_refcnt++;
    401    1.1       cgd 	} else {
    402    1.1       cgd 		rtstat.rts_unreach++;
    403   1.10   mycroft 	miss:	if (report) {
    404   1.87  christos 			memset((void *)&info, 0, sizeof(info));
    405   1.10   mycroft 			info.rti_info[RTAX_DST] = dst;
    406   1.10   mycroft 			rt_missmsg(msgtype, &info, 0, err);
    407   1.10   mycroft 		}
    408    1.1       cgd 	}
    409    1.1       cgd 	splx(s);
    410   1.95    dyoung 	return newrt;
    411    1.1       cgd }
    412    1.1       cgd 
    413    1.9   mycroft void
    414   1.60      matt rtfree(struct rtentry *rt)
    415    1.1       cgd {
    416   1.36  augustss 	struct ifaddr *ifa;
    417   1.10   mycroft 
    418  1.132     rmind 	KASSERT(rt != NULL);
    419  1.132     rmind 	KASSERT(rt->rt_refcnt > 0);
    420  1.132     rmind 
    421    1.1       cgd 	rt->rt_refcnt--;
    422  1.132     rmind 	if (rt->rt_refcnt == 0 && (rt->rt_flags & RTF_UP) == 0) {
    423  1.125    dyoung 		rt_assert_inactive(rt);
    424   1.10   mycroft 		rttrash--;
    425   1.54    itojun 		rt_timer_remove_all(rt, 0);
    426   1.10   mycroft 		ifa = rt->rt_ifa;
    427   1.78    dyoung 		rt->rt_ifa = NULL;
    428  1.133     rmind 		ifafree(ifa);
    429   1.78    dyoung 		rt->rt_ifp = NULL;
    430   1.94    dyoung 		rt_destroy(rt);
    431   1.22   thorpej 		pool_put(&rtentry_pool, rt);
    432    1.1       cgd 	}
    433    1.1       cgd }
    434    1.1       cgd 
    435    1.1       cgd /*
    436    1.1       cgd  * Force a routing table entry to the specified
    437    1.1       cgd  * destination to go through the given gateway.
    438    1.1       cgd  * Normally called as a result of a routing redirect
    439    1.1       cgd  * message from the network layer.
    440    1.1       cgd  *
    441   1.13   mycroft  * N.B.: must be called at splsoftnet
    442    1.1       cgd  */
    443   1.14  christos void
    444   1.60      matt rtredirect(const struct sockaddr *dst, const struct sockaddr *gateway,
    445   1.60      matt 	const struct sockaddr *netmask, int flags, const struct sockaddr *src,
    446   1.60      matt 	struct rtentry **rtp)
    447    1.1       cgd {
    448   1.36  augustss 	struct rtentry *rt;
    449    1.1       cgd 	int error = 0;
    450  1.121    dyoung 	uint64_t *stat = NULL;
    451   1.10   mycroft 	struct rt_addrinfo info;
    452   1.10   mycroft 	struct ifaddr *ifa;
    453    1.1       cgd 
    454    1.1       cgd 	/* verify the gateway is directly reachable */
    455   1.68  christos 	if ((ifa = ifa_ifwithnet(gateway)) == NULL) {
    456    1.1       cgd 		error = ENETUNREACH;
    457    1.8       cgd 		goto out;
    458    1.1       cgd 	}
    459    1.1       cgd 	rt = rtalloc1(dst, 0);
    460    1.1       cgd 	/*
    461    1.1       cgd 	 * If the redirect isn't from our current router for this dst,
    462    1.1       cgd 	 * it's either old or wrong.  If it redirects us to ourselves,
    463    1.1       cgd 	 * we have a routing loop, perhaps as a result of an interface
    464    1.1       cgd 	 * going down recently.
    465    1.1       cgd 	 */
    466   1.10   mycroft 	if (!(flags & RTF_DONE) && rt &&
    467  1.115      yamt 	     (sockaddr_cmp(src, rt->rt_gateway) != 0 || rt->rt_ifa != ifa))
    468    1.1       cgd 		error = EINVAL;
    469    1.1       cgd 	else if (ifa_ifwithaddr(gateway))
    470    1.1       cgd 		error = EHOSTUNREACH;
    471    1.1       cgd 	if (error)
    472    1.1       cgd 		goto done;
    473    1.1       cgd 	/*
    474    1.1       cgd 	 * Create a new entry if we just got back a wildcard entry
    475   1.33     soren 	 * or the lookup failed.  This is necessary for hosts
    476    1.1       cgd 	 * which use routing redirects generated by smart gateways
    477    1.1       cgd 	 * to dynamically build the routing tables.
    478    1.1       cgd 	 */
    479   1.95    dyoung 	if (rt == NULL || (rt_mask(rt) && rt_mask(rt)->sa_len < 2))
    480    1.1       cgd 		goto create;
    481    1.1       cgd 	/*
    482    1.1       cgd 	 * Don't listen to the redirect if it's
    483   1.65     perry 	 * for a route to an interface.
    484    1.1       cgd 	 */
    485    1.1       cgd 	if (rt->rt_flags & RTF_GATEWAY) {
    486    1.1       cgd 		if (((rt->rt_flags & RTF_HOST) == 0) && (flags & RTF_HOST)) {
    487    1.1       cgd 			/*
    488    1.1       cgd 			 * Changing from route to net => route to host.
    489    1.1       cgd 			 * Create new route, rather than smashing route to net.
    490    1.1       cgd 			 */
    491    1.1       cgd 		create:
    492   1.95    dyoung 			if (rt != NULL)
    493   1.39    itojun 				rtfree(rt);
    494    1.1       cgd 			flags |=  RTF_GATEWAY | RTF_DYNAMIC;
    495  1.122    kefren 			memset(&info, 0, sizeof(info));
    496   1.39    itojun 			info.rti_info[RTAX_DST] = dst;
    497   1.39    itojun 			info.rti_info[RTAX_GATEWAY] = gateway;
    498   1.39    itojun 			info.rti_info[RTAX_NETMASK] = netmask;
    499   1.39    itojun 			info.rti_ifa = ifa;
    500   1.39    itojun 			info.rti_flags = flags;
    501   1.39    itojun 			rt = NULL;
    502   1.39    itojun 			error = rtrequest1(RTM_ADD, &info, &rt);
    503   1.39    itojun 			if (rt != NULL)
    504   1.39    itojun 				flags = rt->rt_flags;
    505    1.1       cgd 			stat = &rtstat.rts_dynamic;
    506    1.1       cgd 		} else {
    507    1.1       cgd 			/*
    508    1.1       cgd 			 * Smash the current notion of the gateway to
    509    1.1       cgd 			 * this destination.  Should check about netmask!!!
    510    1.1       cgd 			 */
    511   1.10   mycroft 			rt->rt_flags |= RTF_MODIFIED;
    512   1.10   mycroft 			flags |= RTF_MODIFIED;
    513   1.10   mycroft 			stat = &rtstat.rts_newgateway;
    514   1.94    dyoung 			rt_setgate(rt, gateway);
    515    1.1       cgd 		}
    516    1.1       cgd 	} else
    517    1.1       cgd 		error = EHOSTUNREACH;
    518    1.1       cgd done:
    519    1.1       cgd 	if (rt) {
    520   1.95    dyoung 		if (rtp != NULL && !error)
    521    1.1       cgd 			*rtp = rt;
    522    1.1       cgd 		else
    523    1.1       cgd 			rtfree(rt);
    524    1.1       cgd 	}
    525    1.8       cgd out:
    526    1.1       cgd 	if (error)
    527    1.1       cgd 		rtstat.rts_badredirect++;
    528    1.8       cgd 	else if (stat != NULL)
    529    1.8       cgd 		(*stat)++;
    530   1.95    dyoung 	memset(&info, 0, sizeof(info));
    531   1.10   mycroft 	info.rti_info[RTAX_DST] = dst;
    532   1.10   mycroft 	info.rti_info[RTAX_GATEWAY] = gateway;
    533   1.10   mycroft 	info.rti_info[RTAX_NETMASK] = netmask;
    534   1.10   mycroft 	info.rti_info[RTAX_AUTHOR] = src;
    535   1.10   mycroft 	rt_missmsg(RTM_REDIRECT, &info, flags, error);
    536    1.1       cgd }
    537    1.1       cgd 
    538    1.1       cgd /*
    539  1.146     ozaki  * Delete a route and generate a message.
    540  1.146     ozaki  * It doesn't free a passed rt.
    541   1.40    itojun  */
    542   1.40    itojun static int
    543   1.60      matt rtdeletemsg(struct rtentry *rt)
    544   1.40    itojun {
    545   1.40    itojun 	int error;
    546   1.40    itojun 	struct rt_addrinfo info;
    547  1.146     ozaki 	struct rtentry *retrt;
    548   1.40    itojun 
    549   1.40    itojun 	/*
    550   1.40    itojun 	 * Request the new route so that the entry is not actually
    551   1.40    itojun 	 * deleted.  That will allow the information being reported to
    552   1.40    itojun 	 * be accurate (and consistent with route_output()).
    553   1.40    itojun 	 */
    554   1.95    dyoung 	memset(&info, 0, sizeof(info));
    555   1.94    dyoung 	info.rti_info[RTAX_DST] = rt_getkey(rt);
    556   1.40    itojun 	info.rti_info[RTAX_NETMASK] = rt_mask(rt);
    557   1.40    itojun 	info.rti_info[RTAX_GATEWAY] = rt->rt_gateway;
    558   1.40    itojun 	info.rti_flags = rt->rt_flags;
    559  1.146     ozaki 	error = rtrequest1(RTM_DELETE, &info, &retrt);
    560   1.40    itojun 
    561   1.40    itojun 	rt_missmsg(RTM_DELETE, &info, info.rti_flags, error);
    562   1.40    itojun 
    563  1.146     ozaki 	if (error == 0)
    564  1.146     ozaki 		rtfree(retrt);
    565   1.95    dyoung 	return error;
    566   1.40    itojun }
    567   1.40    itojun 
    568   1.41    itojun static int
    569   1.92    dyoung rtflushclone1(struct rtentry *rt, void *arg)
    570   1.41    itojun {
    571   1.92    dyoung 	struct rtentry *parent;
    572   1.41    itojun 
    573   1.41    itojun 	parent = (struct rtentry *)arg;
    574   1.41    itojun 	if ((rt->rt_flags & RTF_CLONED) != 0 && rt->rt_parent == parent)
    575   1.41    itojun 		rtdeletemsg(rt);
    576   1.41    itojun 	return 0;
    577   1.41    itojun }
    578   1.41    itojun 
    579   1.41    itojun static void
    580   1.92    dyoung rtflushclone(sa_family_t family, struct rtentry *parent)
    581   1.41    itojun {
    582   1.41    itojun 
    583   1.41    itojun #ifdef DIAGNOSTIC
    584   1.41    itojun 	if (!parent || (parent->rt_flags & RTF_CLONING) == 0)
    585   1.41    itojun 		panic("rtflushclone: called with a non-cloning route");
    586   1.41    itojun #endif
    587   1.92    dyoung 	rt_walktree(family, rtflushclone1, (void *)parent);
    588   1.41    itojun }
    589   1.41    itojun 
    590    1.1       cgd struct ifaddr *
    591   1.60      matt ifa_ifwithroute(int flags, const struct sockaddr *dst,
    592   1.60      matt 	const struct sockaddr *gateway)
    593    1.1       cgd {
    594   1.36  augustss 	struct ifaddr *ifa;
    595    1.1       cgd 	if ((flags & RTF_GATEWAY) == 0) {
    596    1.1       cgd 		/*
    597    1.1       cgd 		 * If we are adding a route to an interface,
    598    1.1       cgd 		 * and the interface is a pt to pt link
    599    1.1       cgd 		 * we should search for the destination
    600    1.1       cgd 		 * as our clue to the interface.  Otherwise
    601    1.1       cgd 		 * we can use the local address.
    602    1.1       cgd 		 */
    603   1.68  christos 		ifa = NULL;
    604  1.127  christos 		if ((flags & RTF_HOST) && gateway->sa_family != AF_LINK)
    605    1.1       cgd 			ifa = ifa_ifwithdstaddr(dst);
    606   1.68  christos 		if (ifa == NULL)
    607    1.1       cgd 			ifa = ifa_ifwithaddr(gateway);
    608    1.1       cgd 	} else {
    609    1.1       cgd 		/*
    610    1.1       cgd 		 * If we are adding a route to a remote net
    611    1.1       cgd 		 * or host, the gateway may still be on the
    612    1.1       cgd 		 * other end of a pt to pt link.
    613    1.1       cgd 		 */
    614    1.1       cgd 		ifa = ifa_ifwithdstaddr(gateway);
    615    1.1       cgd 	}
    616   1.68  christos 	if (ifa == NULL)
    617    1.1       cgd 		ifa = ifa_ifwithnet(gateway);
    618   1.68  christos 	if (ifa == NULL) {
    619    1.1       cgd 		struct rtentry *rt = rtalloc1(dst, 0);
    620   1.68  christos 		if (rt == NULL)
    621   1.68  christos 			return NULL;
    622  1.146     ozaki 		ifa = rt->rt_ifa;
    623  1.146     ozaki 		rtfree(rt);
    624  1.146     ozaki 		if (ifa == NULL)
    625   1.68  christos 			return NULL;
    626    1.1       cgd 	}
    627    1.1       cgd 	if (ifa->ifa_addr->sa_family != dst->sa_family) {
    628   1.10   mycroft 		struct ifaddr *oifa = ifa;
    629    1.1       cgd 		ifa = ifaof_ifpforaddr(dst, ifa->ifa_ifp);
    630  1.127  christos 		if (ifa == NULL)
    631    1.1       cgd 			ifa = oifa;
    632    1.1       cgd 	}
    633   1.95    dyoung 	return ifa;
    634    1.1       cgd }
    635    1.1       cgd 
    636  1.146     ozaki /*
    637  1.146     ozaki  * If it suceeds and ret_nrt isn't NULL, refcnt of ret_nrt is incremented.
    638  1.146     ozaki  * The caller has to rtfree it by itself.
    639  1.146     ozaki  */
    640    1.9   mycroft int
    641   1.60      matt rtrequest(int req, const struct sockaddr *dst, const struct sockaddr *gateway,
    642   1.60      matt 	const struct sockaddr *netmask, int flags, struct rtentry **ret_nrt)
    643    1.1       cgd {
    644   1.39    itojun 	struct rt_addrinfo info;
    645   1.39    itojun 
    646   1.44   thorpej 	memset(&info, 0, sizeof(info));
    647   1.39    itojun 	info.rti_flags = flags;
    648   1.39    itojun 	info.rti_info[RTAX_DST] = dst;
    649   1.39    itojun 	info.rti_info[RTAX_GATEWAY] = gateway;
    650   1.39    itojun 	info.rti_info[RTAX_NETMASK] = netmask;
    651   1.39    itojun 	return rtrequest1(req, &info, ret_nrt);
    652   1.39    itojun }
    653   1.39    itojun 
    654  1.146     ozaki /*
    655  1.146     ozaki  * It's a utility function to add/remove a route to/from the routing table
    656  1.146     ozaki  * and tell user processes the addition/removal on success.
    657  1.146     ozaki  */
    658  1.146     ozaki int
    659  1.146     ozaki rtrequest_newmsg(const int req, const struct sockaddr *dst,
    660  1.146     ozaki 	const struct sockaddr *gateway, const struct sockaddr *netmask,
    661  1.146     ozaki 	const int flags)
    662  1.146     ozaki {
    663  1.146     ozaki 	int error;
    664  1.146     ozaki 	struct rtentry *ret_nrt = NULL;
    665  1.146     ozaki 
    666  1.146     ozaki 	KASSERT(req == RTM_ADD || req == RTM_DELETE);
    667  1.146     ozaki 
    668  1.146     ozaki 	error = rtrequest(req, dst, gateway, netmask, flags, &ret_nrt);
    669  1.146     ozaki 	if (error != 0)
    670  1.146     ozaki 		return error;
    671  1.146     ozaki 
    672  1.146     ozaki 	KASSERT(ret_nrt != NULL);
    673  1.146     ozaki 
    674  1.146     ozaki 	rt_newmsg(req, ret_nrt); /* tell user process */
    675  1.146     ozaki 	rtfree(ret_nrt);
    676  1.146     ozaki 
    677  1.146     ozaki 	return 0;
    678  1.146     ozaki }
    679  1.146     ozaki 
    680   1.39    itojun int
    681   1.60      matt rt_getifa(struct rt_addrinfo *info)
    682   1.39    itojun {
    683   1.39    itojun 	struct ifaddr *ifa;
    684   1.68  christos 	const struct sockaddr *dst = info->rti_info[RTAX_DST];
    685   1.68  christos 	const struct sockaddr *gateway = info->rti_info[RTAX_GATEWAY];
    686   1.68  christos 	const struct sockaddr *ifaaddr = info->rti_info[RTAX_IFA];
    687   1.68  christos 	const struct sockaddr *ifpaddr = info->rti_info[RTAX_IFP];
    688   1.68  christos 	int flags = info->rti_flags;
    689   1.39    itojun 
    690   1.39    itojun 	/*
    691   1.39    itojun 	 * ifp may be specified by sockaddr_dl when protocol address
    692   1.39    itojun 	 * is ambiguous
    693   1.39    itojun 	 */
    694   1.39    itojun 	if (info->rti_ifp == NULL && ifpaddr != NULL
    695   1.39    itojun 	    && ifpaddr->sa_family == AF_LINK &&
    696  1.101    dyoung 	    (ifa = ifa_ifwithnet(ifpaddr)) != NULL)
    697   1.39    itojun 		info->rti_ifp = ifa->ifa_ifp;
    698   1.39    itojun 	if (info->rti_ifa == NULL && ifaaddr != NULL)
    699   1.39    itojun 		info->rti_ifa = ifa_ifwithaddr(ifaaddr);
    700   1.39    itojun 	if (info->rti_ifa == NULL) {
    701   1.59      matt 		const struct sockaddr *sa;
    702   1.39    itojun 
    703   1.39    itojun 		sa = ifaaddr != NULL ? ifaaddr :
    704   1.39    itojun 		    (gateway != NULL ? gateway : dst);
    705   1.39    itojun 		if (sa != NULL && info->rti_ifp != NULL)
    706   1.39    itojun 			info->rti_ifa = ifaof_ifpforaddr(sa, info->rti_ifp);
    707   1.39    itojun 		else if (dst != NULL && gateway != NULL)
    708   1.39    itojun 			info->rti_ifa = ifa_ifwithroute(flags, dst, gateway);
    709   1.39    itojun 		else if (sa != NULL)
    710   1.39    itojun 			info->rti_ifa = ifa_ifwithroute(flags, sa, sa);
    711   1.39    itojun 	}
    712   1.74    dyoung 	if ((ifa = info->rti_ifa) == NULL)
    713   1.74    dyoung 		return ENETUNREACH;
    714  1.145       roy 	if (ifa->ifa_getifa != NULL) {
    715   1.74    dyoung 		info->rti_ifa = ifa = (*ifa->ifa_getifa)(ifa, dst);
    716  1.145       roy 		if (ifa == NULL)
    717  1.145       roy 			return ENETUNREACH;
    718  1.145       roy 	}
    719   1.74    dyoung 	if (info->rti_ifp == NULL)
    720   1.74    dyoung 		info->rti_ifp = ifa->ifa_ifp;
    721   1.74    dyoung 	return 0;
    722   1.39    itojun }
    723   1.39    itojun 
    724  1.146     ozaki /*
    725  1.146     ozaki  * If it suceeds and ret_nrt isn't NULL, refcnt of ret_nrt is incremented.
    726  1.146     ozaki  * The caller has to rtfree it by itself.
    727  1.146     ozaki  */
    728   1.39    itojun int
    729   1.60      matt rtrequest1(int req, struct rt_addrinfo *info, struct rtentry **ret_nrt)
    730   1.39    itojun {
    731   1.60      matt 	int s = splsoftnet();
    732  1.125    dyoung 	int error = 0, rc;
    733   1.40    itojun 	struct rtentry *rt, *crt;
    734  1.125    dyoung 	rtbl_t *rtbl;
    735  1.122    kefren 	struct ifaddr *ifa, *ifa2;
    736   1.94    dyoung 	struct sockaddr_storage maskeddst;
    737   1.68  christos 	const struct sockaddr *dst = info->rti_info[RTAX_DST];
    738   1.68  christos 	const struct sockaddr *gateway = info->rti_info[RTAX_GATEWAY];
    739   1.68  christos 	const struct sockaddr *netmask = info->rti_info[RTAX_NETMASK];
    740   1.68  christos 	int flags = info->rti_flags;
    741    1.1       cgd #define senderr(x) { error = x ; goto bad; }
    742    1.1       cgd 
    743  1.125    dyoung 	if ((rtbl = rt_gettable(dst->sa_family)) == NULL)
    744    1.1       cgd 		senderr(ESRCH);
    745    1.1       cgd 	if (flags & RTF_HOST)
    746   1.68  christos 		netmask = NULL;
    747    1.1       cgd 	switch (req) {
    748    1.1       cgd 	case RTM_DELETE:
    749   1.63  christos 		if (netmask) {
    750   1.94    dyoung 			rt_maskedcopy(dst, (struct sockaddr *)&maskeddst,
    751   1.94    dyoung 			    netmask);
    752   1.94    dyoung 			dst = (struct sockaddr *)&maskeddst;
    753   1.63  christos 		}
    754  1.125    dyoung 		if ((rt = rt_lookup(rtbl, dst, netmask)) == NULL)
    755   1.41    itojun 			senderr(ESRCH);
    756   1.41    itojun 		if ((rt->rt_flags & RTF_CLONING) != 0) {
    757   1.41    itojun 			/* clean up any cloned children */
    758   1.92    dyoung 			rtflushclone(dst->sa_family, rt);
    759   1.41    itojun 		}
    760  1.125    dyoung 		if ((rt = rt_deladdr(rtbl, dst, netmask)) == NULL)
    761    1.1       cgd 			senderr(ESRCH);
    762   1.10   mycroft 		if (rt->rt_gwroute) {
    763  1.131     rmind 			rtfree(rt->rt_gwroute);
    764   1.68  christos 			rt->rt_gwroute = NULL;
    765   1.48    itojun 		}
    766   1.48    itojun 		if (rt->rt_parent) {
    767   1.48    itojun 			rt->rt_parent->rt_refcnt--;
    768   1.48    itojun 			rt->rt_parent = NULL;
    769   1.10   mycroft 		}
    770   1.28       erh 		rt->rt_flags &= ~RTF_UP;
    771  1.116       roy 		if ((ifa = rt->rt_ifa)) {
    772  1.116       roy 			if (ifa->ifa_flags & IFA_ROUTE &&
    773  1.116       roy 			    rt_ifa_connected(rt, ifa)) {
    774  1.116       roy 				RT_DPRINTF("rt->_rt_key = %p, ifa = %p, "
    775  1.116       roy 				    "deleted IFA_ROUTE\n",
    776  1.116       roy 				    (void *)rt->_rt_key, (void *)ifa);
    777  1.116       roy 				ifa->ifa_flags &= ~IFA_ROUTE;
    778  1.116       roy 			}
    779  1.116       roy 			if (ifa->ifa_rtrequest)
    780  1.116       roy 				ifa->ifa_rtrequest(RTM_DELETE, rt, info);
    781  1.116       roy 		}
    782    1.1       cgd 		rttrash++;
    783  1.146     ozaki 		if (ret_nrt) {
    784   1.10   mycroft 			*ret_nrt = rt;
    785  1.146     ozaki 			rt->rt_refcnt++;
    786  1.146     ozaki 		} else if (rt->rt_refcnt <= 0) {
    787  1.146     ozaki 			/* Adjust the refcount */
    788   1.10   mycroft 			rt->rt_refcnt++;
    789    1.1       cgd 			rtfree(rt);
    790   1.10   mycroft 		}
    791    1.1       cgd 		break;
    792    1.1       cgd 
    793    1.1       cgd 	case RTM_RESOLVE:
    794   1.68  christos 		if (ret_nrt == NULL || (rt = *ret_nrt) == NULL)
    795    1.1       cgd 			senderr(EINVAL);
    796   1.40    itojun 		if ((rt->rt_flags & RTF_CLONING) == 0)
    797   1.40    itojun 			senderr(EINVAL);
    798    1.1       cgd 		ifa = rt->rt_ifa;
    799   1.40    itojun 		flags = rt->rt_flags & ~(RTF_CLONING | RTF_STATIC);
    800   1.40    itojun 		flags |= RTF_CLONED;
    801    1.1       cgd 		gateway = rt->rt_gateway;
    802   1.94    dyoung 		flags |= RTF_HOST;
    803    1.1       cgd 		goto makeroute;
    804    1.1       cgd 
    805    1.1       cgd 	case RTM_ADD:
    806   1.68  christos 		if (info->rti_ifa == NULL && (error = rt_getifa(info)))
    807   1.39    itojun 			senderr(error);
    808   1.39    itojun 		ifa = info->rti_ifa;
    809    1.1       cgd 	makeroute:
    810   1.72       tls 		/* Already at splsoftnet() so pool_get/pool_put are safe */
    811   1.22   thorpej 		rt = pool_get(&rtentry_pool, PR_NOWAIT);
    812   1.68  christos 		if (rt == NULL)
    813    1.1       cgd 			senderr(ENOBUFS);
    814  1.109    dyoung 		memset(rt, 0, sizeof(*rt));
    815   1.10   mycroft 		rt->rt_flags = RTF_UP | flags;
    816   1.18       kml 		LIST_INIT(&rt->rt_timer);
    817  1.110    dyoung 		RT_DPRINTF("rt->_rt_key = %p\n", (void *)rt->_rt_key);
    818   1.96    dyoung 		if (rt_setkey(rt, dst, M_NOWAIT) == NULL ||
    819   1.94    dyoung 		    rt_setgate(rt, gateway) != 0) {
    820   1.22   thorpej 			pool_put(&rtentry_pool, rt);
    821   1.10   mycroft 			senderr(ENOBUFS);
    822   1.10   mycroft 		}
    823  1.110    dyoung 		RT_DPRINTF("rt->_rt_key = %p\n", (void *)rt->_rt_key);
    824    1.1       cgd 		if (netmask) {
    825   1.94    dyoung 			rt_maskedcopy(dst, (struct sockaddr *)&maskeddst,
    826   1.94    dyoung 			    netmask);
    827   1.96    dyoung 			rt_setkey(rt, (struct sockaddr *)&maskeddst, M_NOWAIT);
    828  1.110    dyoung 			RT_DPRINTF("rt->_rt_key = %p\n", (void *)rt->_rt_key);
    829   1.94    dyoung 		} else {
    830   1.96    dyoung 			rt_setkey(rt, dst, M_NOWAIT);
    831  1.110    dyoung 			RT_DPRINTF("rt->_rt_key = %p\n", (void *)rt->_rt_key);
    832   1.94    dyoung 		}
    833   1.74    dyoung 		rt_set_ifa(rt, ifa);
    834  1.123    kefren 		if (info->rti_info[RTAX_TAG] != NULL)
    835  1.123    kefren 			rt_settag(rt, info->rti_info[RTAX_TAG]);
    836  1.110    dyoung 		RT_DPRINTF("rt->_rt_key = %p\n", (void *)rt->_rt_key);
    837  1.122    kefren 		if (info->rti_info[RTAX_IFP] != NULL &&
    838  1.122    kefren 		    (ifa2 = ifa_ifwithnet(info->rti_info[RTAX_IFP])) != NULL &&
    839  1.122    kefren 		    ifa2->ifa_ifp != NULL)
    840  1.122    kefren 			rt->rt_ifp = ifa2->ifa_ifp;
    841  1.122    kefren 		else
    842  1.122    kefren 			rt->rt_ifp = ifa->ifa_ifp;
    843   1.27      matt 		if (req == RTM_RESOLVE) {
    844    1.1       cgd 			rt->rt_rmx = (*ret_nrt)->rt_rmx; /* copy metrics */
    845   1.41    itojun 			rt->rt_parent = *ret_nrt;
    846   1.41    itojun 			rt->rt_parent->rt_refcnt++;
    847   1.40    itojun 		}
    848  1.110    dyoung 		RT_DPRINTF("rt->_rt_key = %p\n", (void *)rt->_rt_key);
    849  1.125    dyoung 		rc = rt_addaddr(rtbl, rt, netmask);
    850  1.110    dyoung 		RT_DPRINTF("rt->_rt_key = %p\n", (void *)rt->_rt_key);
    851  1.125    dyoung 		if (rc != 0 && (crt = rtalloc1(rt_getkey(rt), 0)) != NULL) {
    852   1.40    itojun 			/* overwrite cloned route */
    853   1.40    itojun 			if ((crt->rt_flags & RTF_CLONED) != 0) {
    854   1.40    itojun 				rtdeletemsg(crt);
    855  1.125    dyoung 				rc = rt_addaddr(rtbl, rt, netmask);
    856   1.40    itojun 			}
    857  1.131     rmind 			rtfree(crt);
    858  1.110    dyoung 			RT_DPRINTF("rt->_rt_key = %p\n", (void *)rt->_rt_key);
    859   1.40    itojun 		}
    860  1.110    dyoung 		RT_DPRINTF("rt->_rt_key = %p\n", (void *)rt->_rt_key);
    861  1.125    dyoung 		if (rc != 0) {
    862  1.133     rmind 			ifafree(ifa);
    863   1.41    itojun 			if ((rt->rt_flags & RTF_CLONED) != 0 && rt->rt_parent)
    864   1.41    itojun 				rtfree(rt->rt_parent);
    865   1.40    itojun 			if (rt->rt_gwroute)
    866   1.40    itojun 				rtfree(rt->rt_gwroute);
    867   1.94    dyoung 			rt_destroy(rt);
    868   1.40    itojun 			pool_put(&rtentry_pool, rt);
    869  1.125    dyoung 			senderr(rc);
    870   1.27      matt 		}
    871  1.110    dyoung 		RT_DPRINTF("rt->_rt_key = %p\n", (void *)rt->_rt_key);
    872    1.1       cgd 		if (ifa->ifa_rtrequest)
    873   1.39    itojun 			ifa->ifa_rtrequest(req, rt, info);
    874  1.110    dyoung 		RT_DPRINTF("rt->_rt_key = %p\n", (void *)rt->_rt_key);
    875    1.1       cgd 		if (ret_nrt) {
    876    1.1       cgd 			*ret_nrt = rt;
    877    1.1       cgd 			rt->rt_refcnt++;
    878   1.41    itojun 		}
    879   1.41    itojun 		if ((rt->rt_flags & RTF_CLONING) != 0) {
    880   1.41    itojun 			/* clean up any cloned children */
    881   1.92    dyoung 			rtflushclone(dst->sa_family, rt);
    882    1.1       cgd 		}
    883   1.82    dyoung 		rtflushall(dst->sa_family);
    884    1.1       cgd 		break;
    885   1.92    dyoung 	case RTM_GET:
    886   1.94    dyoung 		if (netmask != NULL) {
    887   1.94    dyoung 			rt_maskedcopy(dst, (struct sockaddr *)&maskeddst,
    888   1.94    dyoung 			    netmask);
    889   1.94    dyoung 			dst = (struct sockaddr *)&maskeddst;
    890   1.94    dyoung 		}
    891  1.125    dyoung 		if ((rt = rt_lookup(rtbl, dst, netmask)) == NULL)
    892   1.92    dyoung 			senderr(ESRCH);
    893   1.92    dyoung 		if (ret_nrt != NULL) {
    894   1.92    dyoung 			*ret_nrt = rt;
    895   1.92    dyoung 			rt->rt_refcnt++;
    896   1.92    dyoung 		}
    897   1.92    dyoung 		break;
    898    1.1       cgd 	}
    899    1.1       cgd bad:
    900    1.1       cgd 	splx(s);
    901   1.95    dyoung 	return error;
    902    1.1       cgd }
    903    1.1       cgd 
    904   1.10   mycroft int
    905   1.94    dyoung rt_setgate(struct rtentry *rt, const struct sockaddr *gate)
    906   1.10   mycroft {
    907   1.94    dyoung 	KASSERT(rt != rt->rt_gwroute);
    908   1.94    dyoung 
    909   1.94    dyoung 	KASSERT(rt->_rt_key != NULL);
    910  1.110    dyoung 	RT_DPRINTF("rt->_rt_key = %p\n", (void *)rt->_rt_key);
    911   1.94    dyoung 
    912   1.10   mycroft 	if (rt->rt_gwroute) {
    913  1.131     rmind 		rtfree(rt->rt_gwroute);
    914   1.68  christos 		rt->rt_gwroute = NULL;
    915   1.10   mycroft 	}
    916   1.94    dyoung 	KASSERT(rt->_rt_key != NULL);
    917  1.110    dyoung 	RT_DPRINTF("rt->_rt_key = %p\n", (void *)rt->_rt_key);
    918   1.94    dyoung 	if (rt->rt_gateway != NULL)
    919   1.94    dyoung 		sockaddr_free(rt->rt_gateway);
    920   1.94    dyoung 	KASSERT(rt->_rt_key != NULL);
    921  1.110    dyoung 	RT_DPRINTF("rt->_rt_key = %p\n", (void *)rt->_rt_key);
    922  1.134  christos 	if ((rt->rt_gateway = sockaddr_dup(gate, M_ZERO | M_NOWAIT)) == NULL)
    923   1.94    dyoung 		return ENOMEM;
    924   1.94    dyoung 	KASSERT(rt->_rt_key != NULL);
    925  1.110    dyoung 	RT_DPRINTF("rt->_rt_key = %p\n", (void *)rt->_rt_key);
    926   1.94    dyoung 
    927   1.10   mycroft 	if (rt->rt_flags & RTF_GATEWAY) {
    928   1.94    dyoung 		KASSERT(rt->_rt_key != NULL);
    929  1.110    dyoung 		RT_DPRINTF("rt->_rt_key = %p\n", (void *)rt->_rt_key);
    930   1.10   mycroft 		rt->rt_gwroute = rtalloc1(gate, 1);
    931   1.27      matt 		/*
    932   1.27      matt 		 * If we switched gateways, grab the MTU from the new
    933   1.47    itojun 		 * gateway route if the current MTU, if the current MTU is
    934   1.47    itojun 		 * greater than the MTU of gateway.
    935   1.47    itojun 		 * Note that, if the MTU of gateway is 0, we will reset the
    936   1.47    itojun 		 * MTU of the route to run PMTUD again from scratch. XXX
    937   1.27      matt 		 */
    938   1.94    dyoung 		KASSERT(rt->_rt_key != NULL);
    939  1.110    dyoung 		RT_DPRINTF("rt->_rt_key = %p\n", (void *)rt->_rt_key);
    940   1.27      matt 		if (rt->rt_gwroute
    941   1.27      matt 		    && !(rt->rt_rmx.rmx_locks & RTV_MTU)
    942   1.47    itojun 		    && rt->rt_rmx.rmx_mtu
    943   1.47    itojun 		    && rt->rt_rmx.rmx_mtu > rt->rt_gwroute->rt_rmx.rmx_mtu) {
    944   1.27      matt 			rt->rt_rmx.rmx_mtu = rt->rt_gwroute->rt_rmx.rmx_mtu;
    945   1.27      matt 		}
    946   1.10   mycroft 	}
    947   1.94    dyoung 	KASSERT(rt->_rt_key != NULL);
    948  1.110    dyoung 	RT_DPRINTF("rt->_rt_key = %p\n", (void *)rt->_rt_key);
    949   1.10   mycroft 	return 0;
    950   1.10   mycroft }
    951   1.10   mycroft 
    952  1.141     ozaki static void
    953   1.60      matt rt_maskedcopy(const struct sockaddr *src, struct sockaddr *dst,
    954   1.60      matt 	const struct sockaddr *netmask)
    955    1.1       cgd {
    956   1.94    dyoung 	const char *netmaskp = &netmask->sa_data[0],
    957   1.94    dyoung 	           *srcp = &src->sa_data[0];
    958   1.94    dyoung 	char *dstp = &dst->sa_data[0];
    959  1.126  christos 	const char *maskend = (char *)dst + MIN(netmask->sa_len, src->sa_len);
    960  1.126  christos 	const char *srcend = (char *)dst + src->sa_len;
    961   1.94    dyoung 
    962   1.94    dyoung 	dst->sa_len = src->sa_len;
    963   1.94    dyoung 	dst->sa_family = src->sa_family;
    964   1.94    dyoung 
    965   1.94    dyoung 	while (dstp < maskend)
    966   1.94    dyoung 		*dstp++ = *srcp++ & *netmaskp++;
    967   1.94    dyoung 	if (dstp < srcend)
    968   1.94    dyoung 		memset(dstp, 0, (size_t)(srcend - dstp));
    969    1.1       cgd }
    970   1.10   mycroft 
    971    1.1       cgd /*
    972  1.135       roy  * Inform the routing socket of a route change.
    973  1.135       roy  */
    974  1.135       roy void
    975  1.135       roy rt_newmsg(int cmd, struct rtentry *rt)
    976  1.135       roy {
    977  1.135       roy 	struct rt_addrinfo info;
    978  1.135       roy 
    979  1.135       roy 	memset((void *)&info, 0, sizeof(info));
    980  1.135       roy 	info.rti_info[RTAX_DST] = rt_getkey(rt);
    981  1.135       roy 	info.rti_info[RTAX_GATEWAY] = rt->rt_gateway;
    982  1.135       roy 	info.rti_info[RTAX_NETMASK] = rt_mask(rt);
    983  1.135       roy 	if (rt->rt_ifp) {
    984  1.135       roy 		info.rti_info[RTAX_IFP] = rt->rt_ifp->if_dl->ifa_addr;
    985  1.135       roy 		info.rti_info[RTAX_IFA] = rt->rt_ifa->ifa_addr;
    986  1.135       roy 	}
    987  1.135       roy 
    988  1.135       roy 	rt_missmsg(cmd, &info, rt->rt_flags, 0);
    989  1.135       roy }
    990  1.135       roy 
    991  1.135       roy /*
    992   1.29  sommerfe  * Set up or tear down a routing table entry, normally
    993    1.1       cgd  * for an interface.
    994    1.1       cgd  */
    995    1.9   mycroft int
    996   1.60      matt rtinit(struct ifaddr *ifa, int cmd, int flags)
    997    1.1       cgd {
    998   1.36  augustss 	struct rtentry *rt;
    999   1.36  augustss 	struct sockaddr *dst, *odst;
   1000   1.94    dyoung 	struct sockaddr_storage maskeddst;
   1001   1.68  christos 	struct rtentry *nrt = NULL;
   1002    1.1       cgd 	int error;
   1003   1.39    itojun 	struct rt_addrinfo info;
   1004  1.114    dyoung 	struct sockaddr_dl *sdl;
   1005  1.114    dyoung 	const struct sockaddr_dl *ifsdl;
   1006    1.1       cgd 
   1007    1.1       cgd 	dst = flags & RTF_HOST ? ifa->ifa_dstaddr : ifa->ifa_addr;
   1008    1.1       cgd 	if (cmd == RTM_DELETE) {
   1009    1.1       cgd 		if ((flags & RTF_HOST) == 0 && ifa->ifa_netmask) {
   1010   1.29  sommerfe 			/* Delete subnet route for this interface */
   1011   1.29  sommerfe 			odst = dst;
   1012   1.94    dyoung 			dst = (struct sockaddr *)&maskeddst;
   1013   1.29  sommerfe 			rt_maskedcopy(odst, dst, ifa->ifa_netmask);
   1014    1.1       cgd 		}
   1015   1.14  christos 		if ((rt = rtalloc1(dst, 0)) != NULL) {
   1016  1.146     ozaki 			if (rt->rt_ifa != ifa) {
   1017  1.146     ozaki 				rtfree(rt);
   1018   1.85    dyoung 				return (flags & RTF_HOST) ? EHOSTUNREACH
   1019   1.85    dyoung 							: ENETUNREACH;
   1020  1.146     ozaki 			}
   1021  1.146     ozaki 			rtfree(rt);
   1022    1.1       cgd 		}
   1023    1.1       cgd 	}
   1024   1.44   thorpej 	memset(&info, 0, sizeof(info));
   1025   1.39    itojun 	info.rti_ifa = ifa;
   1026   1.39    itojun 	info.rti_flags = flags | ifa->ifa_flags;
   1027   1.39    itojun 	info.rti_info[RTAX_DST] = dst;
   1028   1.39    itojun 	info.rti_info[RTAX_GATEWAY] = ifa->ifa_addr;
   1029   1.39    itojun 	/*
   1030   1.39    itojun 	 * XXX here, it seems that we are assuming that ifa_netmask is NULL
   1031   1.39    itojun 	 * for RTF_HOST.  bsdi4 passes NULL explicitly (via intermediate
   1032   1.39    itojun 	 * variable) when RTF_HOST is 1.  still not sure if i can safely
   1033   1.39    itojun 	 * change it to meet bsdi4 behavior.
   1034   1.39    itojun 	 */
   1035  1.114    dyoung 	if (cmd != RTM_LLINFO_UPD)
   1036  1.114    dyoung 		info.rti_info[RTAX_NETMASK] = ifa->ifa_netmask;
   1037  1.114    dyoung 	error = rtrequest1((cmd == RTM_LLINFO_UPD) ? RTM_GET : cmd, &info,
   1038  1.114    dyoung 	    &nrt);
   1039  1.114    dyoung 	if (error != 0 || (rt = nrt) == NULL)
   1040  1.146     ozaki 		return error;
   1041  1.146     ozaki 
   1042  1.146     ozaki 	switch (cmd) {
   1043  1.114    dyoung 	case RTM_DELETE:
   1044  1.146     ozaki 		rt_newmsg(cmd, rt);
   1045  1.114    dyoung 		break;
   1046  1.114    dyoung 	case RTM_LLINFO_UPD:
   1047  1.114    dyoung 		RT_DPRINTF("%s: updating%s\n", __func__,
   1048  1.114    dyoung 		    ((rt->rt_flags & RTF_LLINFO) == 0) ? " (no llinfo)" : "");
   1049  1.114    dyoung 
   1050  1.114    dyoung 		ifsdl = ifa->ifa_ifp->if_sadl;
   1051  1.114    dyoung 
   1052  1.114    dyoung 		if ((rt->rt_flags & RTF_LLINFO) != 0 &&
   1053  1.114    dyoung 		    (sdl = satosdl(rt->rt_gateway)) != NULL &&
   1054  1.114    dyoung 		    sdl->sdl_family == AF_LINK &&
   1055  1.114    dyoung 		    sockaddr_dl_setaddr(sdl, sdl->sdl_len, CLLADDR(ifsdl),
   1056  1.114    dyoung 		                        ifa->ifa_ifp->if_addrlen) == NULL) {
   1057  1.114    dyoung 			error = EINVAL;
   1058  1.114    dyoung 			break;
   1059  1.114    dyoung 		}
   1060  1.114    dyoung 
   1061  1.114    dyoung 		if (cmd == RTM_LLINFO_UPD && ifa->ifa_rtrequest != NULL)
   1062  1.114    dyoung 			ifa->ifa_rtrequest(RTM_LLINFO_UPD, rt, &info);
   1063  1.146     ozaki 		rt_newmsg(RTM_CHANGE, rt);
   1064  1.114    dyoung 		break;
   1065  1.114    dyoung 	case RTM_ADD:
   1066   1.10   mycroft 		if (rt->rt_ifa != ifa) {
   1067   1.17  christos 			printf("rtinit: wrong ifa (%p) was (%p)\n", ifa,
   1068   1.17  christos 				rt->rt_ifa);
   1069  1.114    dyoung 			if (rt->rt_ifa->ifa_rtrequest != NULL) {
   1070  1.114    dyoung 				rt->rt_ifa->ifa_rtrequest(RTM_DELETE, rt,
   1071  1.114    dyoung 				    &info);
   1072  1.114    dyoung 			}
   1073   1.74    dyoung 			rt_replace_ifa(rt, ifa);
   1074   1.10   mycroft 			rt->rt_ifp = ifa->ifa_ifp;
   1075  1.114    dyoung 			if (ifa->ifa_rtrequest != NULL)
   1076  1.114    dyoung 				ifa->ifa_rtrequest(RTM_ADD, rt, &info);
   1077   1.10   mycroft 		}
   1078  1.146     ozaki 		rt_newmsg(cmd, rt);
   1079  1.114    dyoung 		break;
   1080    1.1       cgd 	}
   1081  1.147     ozaki 	rtfree(rt);
   1082   1.85    dyoung 	return error;
   1083   1.18       kml }
   1084   1.18       kml 
   1085  1.136       roy static const struct in_addr inmask32 = {.s_addr = INADDR_BROADCAST};
   1086  1.136       roy 
   1087  1.136       roy /* Subroutine for rt_ifa_addlocal() and rt_ifa_remlocal() */
   1088  1.136       roy static int
   1089  1.136       roy rt_ifa_localrequest(int cmd, struct ifaddr *ifa)
   1090  1.136       roy {
   1091  1.136       roy 	struct sockaddr *all1_sa;
   1092  1.136       roy 	struct sockaddr_in all1_sin;
   1093  1.136       roy #ifdef INET6
   1094  1.136       roy 	struct sockaddr_in6 all1_sin6;
   1095  1.136       roy #endif
   1096  1.136       roy 	struct rtentry *nrt = NULL;
   1097  1.136       roy 	int flags, e;
   1098  1.136       roy 
   1099  1.136       roy 	switch(ifa->ifa_addr->sa_family) {
   1100  1.136       roy 	case AF_INET:
   1101  1.136       roy 		sockaddr_in_init(&all1_sin, &inmask32, 0);
   1102  1.136       roy 		all1_sa = (struct sockaddr *)&all1_sin;
   1103  1.136       roy 		break;
   1104  1.136       roy #ifdef INET6
   1105  1.136       roy 	case AF_INET6:
   1106  1.136       roy 		sockaddr_in6_init(&all1_sin6, &in6mask128, 0, 0, 0);
   1107  1.136       roy 		all1_sa = (struct sockaddr *)&all1_sin6;
   1108  1.136       roy 		break;
   1109  1.136       roy #endif
   1110  1.136       roy 	default:
   1111  1.136       roy 		return 0;
   1112  1.136       roy 	}
   1113  1.136       roy 
   1114  1.136       roy 	flags = RTF_UP | RTF_HOST | RTF_LOCAL;
   1115  1.136       roy 	if (!(ifa->ifa_ifp->if_flags & (IFF_LOOPBACK | IFF_POINTOPOINT)))
   1116  1.136       roy 		flags |= RTF_LLINFO;
   1117  1.136       roy 	e = rtrequest(cmd, ifa->ifa_addr, ifa->ifa_addr, all1_sa, flags, &nrt);
   1118  1.136       roy 
   1119  1.136       roy 	/* Make sure rt_ifa be equal to IFA, the second argument of the
   1120  1.136       roy 	 * function. */
   1121  1.136       roy 	if (cmd == RTM_ADD && nrt && ifa != nrt->rt_ifa)
   1122  1.136       roy 		rt_replace_ifa(nrt, ifa);
   1123  1.136       roy 
   1124  1.136       roy 	rt_newaddrmsg(cmd, ifa, e, nrt);
   1125  1.146     ozaki 	if (nrt != NULL)
   1126  1.146     ozaki 		rtfree(nrt);
   1127  1.146     ozaki 
   1128  1.136       roy 	return e;
   1129  1.136       roy }
   1130  1.136       roy 
   1131  1.136       roy /*
   1132  1.136       roy  * Create a local route entry for the address.
   1133  1.136       roy  * Announce the addition of the address and the route to the routing socket.
   1134  1.136       roy  */
   1135  1.136       roy int
   1136  1.136       roy rt_ifa_addlocal(struct ifaddr *ifa)
   1137  1.136       roy {
   1138  1.136       roy 	struct rtentry *rt;
   1139  1.136       roy 	int e;
   1140  1.136       roy 
   1141  1.136       roy 	/* If there is no loopback entry, allocate one. */
   1142  1.136       roy 	rt = rtalloc1(ifa->ifa_addr, 0);
   1143  1.136       roy 	if (rt == NULL || (rt->rt_flags & RTF_HOST) == 0 ||
   1144  1.136       roy 	    (rt->rt_ifp->if_flags & IFF_LOOPBACK) == 0)
   1145  1.136       roy 		e = rt_ifa_localrequest(RTM_ADD, ifa);
   1146  1.136       roy 	else {
   1147  1.136       roy 		e = 0;
   1148  1.136       roy 		rt_newaddrmsg(RTM_NEWADDR, ifa, 0, NULL);
   1149  1.136       roy 	}
   1150  1.136       roy 	if (rt != NULL)
   1151  1.146     ozaki 		rtfree(rt);
   1152  1.136       roy 	return e;
   1153  1.136       roy }
   1154  1.136       roy 
   1155  1.136       roy /*
   1156  1.136       roy  * Remove the local route entry for the address.
   1157  1.136       roy  * Announce the removal of the address and the route to the routing socket.
   1158  1.136       roy  */
   1159  1.136       roy int
   1160  1.136       roy rt_ifa_remlocal(struct ifaddr *ifa, struct ifaddr *alt_ifa)
   1161  1.136       roy {
   1162  1.136       roy 	struct rtentry *rt;
   1163  1.136       roy 	int e = 0;
   1164  1.136       roy 
   1165  1.136       roy 	rt = rtalloc1(ifa->ifa_addr, 0);
   1166  1.136       roy 
   1167  1.136       roy 	/*
   1168  1.136       roy 	 * Before deleting, check if a corresponding loopbacked
   1169  1.136       roy 	 * host route surely exists.  With this check, we can avoid
   1170  1.136       roy 	 * deleting an interface direct route whose destination is
   1171  1.136       roy 	 * the same as the address being removed.  This can happen
   1172  1.136       roy 	 * when removing a subnet-router anycast address on an
   1173  1.136       roy 	 * interface attached to a shared medium.
   1174  1.136       roy 	 */
   1175  1.136       roy 	if (rt != NULL &&
   1176  1.136       roy 	    (rt->rt_flags & RTF_HOST) &&
   1177  1.136       roy 	    (rt->rt_ifp->if_flags & IFF_LOOPBACK))
   1178  1.136       roy 	{
   1179  1.136       roy 		/* If we cannot replace the route's ifaddr with the equivalent
   1180  1.136       roy 		 * ifaddr of another interface, I believe it is safest to
   1181  1.136       roy 		 * delete the route.
   1182  1.136       roy 		 */
   1183  1.136       roy 		if (alt_ifa == NULL)
   1184  1.136       roy 			e = rt_ifa_localrequest(RTM_DELETE, ifa);
   1185  1.136       roy 		else {
   1186  1.136       roy 			rt_replace_ifa(rt, alt_ifa);
   1187  1.136       roy 			rt_newmsg(RTM_CHANGE, rt);
   1188  1.136       roy 		}
   1189  1.136       roy 	} else
   1190  1.136       roy 		rt_newaddrmsg(RTM_DELADDR, ifa, 0, NULL);
   1191  1.136       roy 	if (rt != NULL)
   1192  1.146     ozaki 		rtfree(rt);
   1193  1.136       roy 	return e;
   1194  1.136       roy }
   1195  1.136       roy 
   1196   1.18       kml /*
   1197   1.18       kml  * Route timer routines.  These routes allow functions to be called
   1198   1.18       kml  * for various routes at any time.  This is useful in supporting
   1199   1.18       kml  * path MTU discovery and redirect route deletion.
   1200   1.18       kml  *
   1201   1.18       kml  * This is similar to some BSDI internal functions, but it provides
   1202   1.18       kml  * for multiple queues for efficiency's sake...
   1203   1.18       kml  */
   1204   1.18       kml 
   1205   1.18       kml LIST_HEAD(, rttimer_queue) rttimer_queue_head;
   1206   1.18       kml static int rt_init_done = 0;
   1207   1.18       kml 
   1208   1.60      matt #define RTTIMER_CALLOUT(r)	do {					\
   1209   1.60      matt 		if (r->rtt_func != NULL) {				\
   1210   1.60      matt 			(*r->rtt_func)(r->rtt_rt, r);			\
   1211   1.60      matt 		} else {						\
   1212   1.60      matt 			rtrequest((int) RTM_DELETE,			\
   1213   1.94    dyoung 				  rt_getkey(r->rtt_rt),			\
   1214   1.60      matt 				  0, 0, 0, 0);				\
   1215   1.60      matt 		}							\
   1216   1.60      matt 	} while (/*CONSTCOND*/0)
   1217   1.18       kml 
   1218   1.65     perry /*
   1219   1.18       kml  * Some subtle order problems with domain initialization mean that
   1220   1.18       kml  * we cannot count on this being run from rt_init before various
   1221   1.18       kml  * protocol initializations are done.  Therefore, we make sure
   1222   1.18       kml  * that this is run when the first queue is added...
   1223   1.18       kml  */
   1224   1.18       kml 
   1225   1.65     perry void
   1226   1.60      matt rt_timer_init(void)
   1227   1.18       kml {
   1228   1.18       kml 	assert(rt_init_done == 0);
   1229   1.18       kml 
   1230   1.18       kml 	LIST_INIT(&rttimer_queue_head);
   1231   1.93        ad 	callout_init(&rt_timer_ch, 0);
   1232   1.35   thorpej 	callout_reset(&rt_timer_ch, hz, rt_timer_timer, NULL);
   1233   1.18       kml 	rt_init_done = 1;
   1234   1.18       kml }
   1235   1.18       kml 
   1236   1.18       kml struct rttimer_queue *
   1237   1.60      matt rt_timer_queue_create(u_int timeout)
   1238   1.18       kml {
   1239   1.18       kml 	struct rttimer_queue *rtq;
   1240   1.18       kml 
   1241   1.18       kml 	if (rt_init_done == 0)
   1242   1.18       kml 		rt_timer_init();
   1243   1.18       kml 
   1244   1.18       kml 	R_Malloc(rtq, struct rttimer_queue *, sizeof *rtq);
   1245   1.18       kml 	if (rtq == NULL)
   1246   1.85    dyoung 		return NULL;
   1247  1.109    dyoung 	memset(rtq, 0, sizeof(*rtq));
   1248   1.18       kml 
   1249   1.18       kml 	rtq->rtq_timeout = timeout;
   1250   1.24   thorpej 	TAILQ_INIT(&rtq->rtq_head);
   1251   1.18       kml 	LIST_INSERT_HEAD(&rttimer_queue_head, rtq, rtq_link);
   1252   1.18       kml 
   1253   1.85    dyoung 	return rtq;
   1254   1.18       kml }
   1255   1.18       kml 
   1256   1.18       kml void
   1257   1.60      matt rt_timer_queue_change(struct rttimer_queue *rtq, long timeout)
   1258   1.18       kml {
   1259   1.24   thorpej 
   1260   1.18       kml 	rtq->rtq_timeout = timeout;
   1261   1.18       kml }
   1262   1.18       kml 
   1263   1.18       kml void
   1264   1.60      matt rt_timer_queue_remove_all(struct rttimer_queue *rtq, int destroy)
   1265   1.18       kml {
   1266   1.24   thorpej 	struct rttimer *r;
   1267   1.18       kml 
   1268   1.24   thorpej 	while ((r = TAILQ_FIRST(&rtq->rtq_head)) != NULL) {
   1269   1.18       kml 		LIST_REMOVE(r, rtt_link);
   1270   1.24   thorpej 		TAILQ_REMOVE(&rtq->rtq_head, r, rtt_next);
   1271   1.24   thorpej 		if (destroy)
   1272   1.18       kml 			RTTIMER_CALLOUT(r);
   1273   1.72       tls 		/* we are already at splsoftnet */
   1274   1.22   thorpej 		pool_put(&rttimer_pool, r);
   1275   1.37    itojun 		if (rtq->rtq_count > 0)
   1276   1.37    itojun 			rtq->rtq_count--;
   1277   1.37    itojun 		else
   1278   1.55    itojun 			printf("rt_timer_queue_remove_all: "
   1279   1.55    itojun 			    "rtq_count reached 0\n");
   1280   1.18       kml 	}
   1281   1.55    itojun }
   1282   1.55    itojun 
   1283   1.55    itojun void
   1284   1.60      matt rt_timer_queue_destroy(struct rttimer_queue *rtq, int destroy)
   1285   1.55    itojun {
   1286   1.55    itojun 
   1287   1.55    itojun 	rt_timer_queue_remove_all(rtq, destroy);
   1288   1.18       kml 
   1289   1.18       kml 	LIST_REMOVE(rtq, rtq_link);
   1290   1.22   thorpej 
   1291   1.22   thorpej 	/*
   1292   1.22   thorpej 	 * Caller is responsible for freeing the rttimer_queue structure.
   1293   1.22   thorpej 	 */
   1294   1.18       kml }
   1295   1.18       kml 
   1296   1.37    itojun unsigned long
   1297   1.60      matt rt_timer_count(struct rttimer_queue *rtq)
   1298   1.37    itojun {
   1299   1.37    itojun 	return rtq->rtq_count;
   1300   1.37    itojun }
   1301   1.37    itojun 
   1302   1.65     perry void
   1303   1.60      matt rt_timer_remove_all(struct rtentry *rt, int destroy)
   1304   1.18       kml {
   1305   1.24   thorpej 	struct rttimer *r;
   1306   1.18       kml 
   1307   1.24   thorpej 	while ((r = LIST_FIRST(&rt->rt_timer)) != NULL) {
   1308   1.18       kml 		LIST_REMOVE(r, rtt_link);
   1309   1.24   thorpej 		TAILQ_REMOVE(&r->rtt_queue->rtq_head, r, rtt_next);
   1310   1.54    itojun 		if (destroy)
   1311   1.54    itojun 			RTTIMER_CALLOUT(r);
   1312   1.37    itojun 		if (r->rtt_queue->rtq_count > 0)
   1313   1.37    itojun 			r->rtt_queue->rtq_count--;
   1314   1.37    itojun 		else
   1315   1.37    itojun 			printf("rt_timer_remove_all: rtq_count reached 0\n");
   1316   1.72       tls 		/* we are already at splsoftnet */
   1317   1.38    itojun 		pool_put(&rttimer_pool, r);
   1318   1.18       kml 	}
   1319   1.18       kml }
   1320   1.18       kml 
   1321   1.65     perry int
   1322   1.60      matt rt_timer_add(struct rtentry *rt,
   1323   1.60      matt 	void (*func)(struct rtentry *, struct rttimer *),
   1324   1.60      matt 	struct rttimer_queue *queue)
   1325   1.18       kml {
   1326   1.24   thorpej 	struct rttimer *r;
   1327   1.72       tls 	int s;
   1328   1.18       kml 
   1329   1.24   thorpej 	/*
   1330   1.24   thorpej 	 * If there's already a timer with this action, destroy it before
   1331   1.24   thorpej 	 * we add a new one.
   1332   1.24   thorpej 	 */
   1333   1.85    dyoung 	LIST_FOREACH(r, &rt->rt_timer, rtt_link) {
   1334   1.85    dyoung 		if (r->rtt_func == func)
   1335   1.85    dyoung 			break;
   1336   1.85    dyoung 	}
   1337   1.85    dyoung 	if (r != NULL) {
   1338   1.85    dyoung 		LIST_REMOVE(r, rtt_link);
   1339   1.85    dyoung 		TAILQ_REMOVE(&r->rtt_queue->rtq_head, r, rtt_next);
   1340   1.85    dyoung 		if (r->rtt_queue->rtq_count > 0)
   1341   1.85    dyoung 			r->rtt_queue->rtq_count--;
   1342   1.85    dyoung 		else
   1343   1.85    dyoung 			printf("rt_timer_add: rtq_count reached 0\n");
   1344   1.85    dyoung 	} else {
   1345   1.85    dyoung 		s = splsoftnet();
   1346   1.85    dyoung 		r = pool_get(&rttimer_pool, PR_NOWAIT);
   1347   1.85    dyoung 		splx(s);
   1348   1.85    dyoung 		if (r == NULL)
   1349   1.85    dyoung 			return ENOBUFS;
   1350   1.18       kml 	}
   1351   1.18       kml 
   1352   1.85    dyoung 	memset(r, 0, sizeof(*r));
   1353   1.24   thorpej 
   1354   1.24   thorpej 	r->rtt_rt = rt;
   1355   1.70    kardel 	r->rtt_time = time_uptime;
   1356   1.24   thorpej 	r->rtt_func = func;
   1357   1.24   thorpej 	r->rtt_queue = queue;
   1358   1.24   thorpej 	LIST_INSERT_HEAD(&rt->rt_timer, r, rtt_link);
   1359   1.24   thorpej 	TAILQ_INSERT_TAIL(&queue->rtq_head, r, rtt_next);
   1360   1.37    itojun 	r->rtt_queue->rtq_count++;
   1361   1.65     perry 
   1362   1.95    dyoung 	return 0;
   1363   1.18       kml }
   1364   1.18       kml 
   1365   1.18       kml /* ARGSUSED */
   1366   1.18       kml void
   1367   1.76  christos rt_timer_timer(void *arg)
   1368   1.18       kml {
   1369   1.24   thorpej 	struct rttimer_queue *rtq;
   1370   1.24   thorpej 	struct rttimer *r;
   1371   1.24   thorpej 	int s;
   1372   1.21       kml 
   1373   1.24   thorpej 	s = splsoftnet();
   1374   1.85    dyoung 	LIST_FOREACH(rtq, &rttimer_queue_head, rtq_link) {
   1375   1.24   thorpej 		while ((r = TAILQ_FIRST(&rtq->rtq_head)) != NULL &&
   1376   1.70    kardel 		    (r->rtt_time + rtq->rtq_timeout) < time_uptime) {
   1377   1.24   thorpej 			LIST_REMOVE(r, rtt_link);
   1378   1.24   thorpej 			TAILQ_REMOVE(&rtq->rtq_head, r, rtt_next);
   1379   1.24   thorpej 			RTTIMER_CALLOUT(r);
   1380   1.24   thorpej 			pool_put(&rttimer_pool, r);
   1381   1.37    itojun 			if (rtq->rtq_count > 0)
   1382   1.37    itojun 				rtq->rtq_count--;
   1383   1.37    itojun 			else
   1384   1.37    itojun 				printf("rt_timer_timer: rtq_count reached 0\n");
   1385   1.18       kml 		}
   1386   1.18       kml 	}
   1387   1.24   thorpej 	splx(s);
   1388   1.18       kml 
   1389   1.35   thorpej 	callout_reset(&rt_timer_ch, hz, rt_timer_timer, NULL);
   1390    1.1       cgd }
   1391   1.83     joerg 
   1392  1.102    dyoung static struct rtentry *
   1393   1.84     joerg _rtcache_init(struct route *ro, int flag)
   1394   1.84     joerg {
   1395  1.114    dyoung 	rtcache_invariants(ro);
   1396   1.99    dyoung 	KASSERT(ro->_ro_rt == NULL);
   1397   1.84     joerg 
   1398   1.90    dyoung 	if (rtcache_getdst(ro) == NULL)
   1399  1.102    dyoung 		return NULL;
   1400  1.105    dyoung 	ro->ro_invalid = false;
   1401  1.105    dyoung 	if ((ro->_ro_rt = rtalloc1(rtcache_getdst(ro), flag)) != NULL)
   1402  1.105    dyoung 		rtcache(ro);
   1403  1.103    dyoung 
   1404  1.114    dyoung 	rtcache_invariants(ro);
   1405  1.102    dyoung 	return ro->_ro_rt;
   1406   1.84     joerg }
   1407   1.84     joerg 
   1408  1.102    dyoung struct rtentry *
   1409   1.83     joerg rtcache_init(struct route *ro)
   1410   1.83     joerg {
   1411  1.102    dyoung 	return _rtcache_init(ro, 1);
   1412   1.83     joerg }
   1413   1.83     joerg 
   1414  1.102    dyoung struct rtentry *
   1415   1.83     joerg rtcache_init_noclone(struct route *ro)
   1416   1.83     joerg {
   1417  1.102    dyoung 	return _rtcache_init(ro, 0);
   1418   1.83     joerg }
   1419   1.90    dyoung 
   1420  1.102    dyoung struct rtentry *
   1421   1.90    dyoung rtcache_update(struct route *ro, int clone)
   1422   1.90    dyoung {
   1423   1.90    dyoung 	rtcache_clear(ro);
   1424  1.102    dyoung 	return _rtcache_init(ro, clone);
   1425   1.90    dyoung }
   1426   1.83     joerg 
   1427   1.83     joerg void
   1428   1.90    dyoung rtcache_copy(struct route *new_ro, const struct route *old_ro)
   1429   1.83     joerg {
   1430  1.103    dyoung 	struct rtentry *rt;
   1431  1.103    dyoung 
   1432  1.103    dyoung 	KASSERT(new_ro != old_ro);
   1433  1.114    dyoung 	rtcache_invariants(new_ro);
   1434  1.114    dyoung 	rtcache_invariants(old_ro);
   1435  1.103    dyoung 
   1436  1.104    dyoung 	if ((rt = rtcache_validate(old_ro)) != NULL)
   1437  1.103    dyoung 		rt->rt_refcnt++;
   1438  1.103    dyoung 
   1439   1.90    dyoung 	if (rtcache_getdst(old_ro) == NULL ||
   1440   1.90    dyoung 	    rtcache_setdst(new_ro, rtcache_getdst(old_ro)) != 0)
   1441   1.90    dyoung 		return;
   1442  1.103    dyoung 
   1443  1.105    dyoung 	new_ro->ro_invalid = false;
   1444  1.103    dyoung 	if ((new_ro->_ro_rt = rt) != NULL)
   1445   1.86    dyoung 		rtcache(new_ro);
   1446  1.114    dyoung 	rtcache_invariants(new_ro);
   1447   1.83     joerg }
   1448   1.83     joerg 
   1449  1.105    dyoung static struct dom_rtlist invalid_routes = LIST_HEAD_INITIALIZER(dom_rtlist);
   1450  1.105    dyoung 
   1451  1.144     ozaki static void
   1452  1.105    dyoung rtcache_invalidate(struct dom_rtlist *rtlist)
   1453   1.83     joerg {
   1454  1.105    dyoung 	struct route *ro;
   1455   1.99    dyoung 
   1456  1.105    dyoung 	while ((ro = LIST_FIRST(rtlist)) != NULL) {
   1457  1.114    dyoung 		rtcache_invariants(ro);
   1458  1.105    dyoung 		KASSERT(ro->_ro_rt != NULL);
   1459  1.105    dyoung 		ro->ro_invalid = true;
   1460   1.99    dyoung 		LIST_REMOVE(ro, ro_rtcache_next);
   1461  1.105    dyoung 		LIST_INSERT_HEAD(&invalid_routes, ro, ro_rtcache_next);
   1462  1.114    dyoung 		rtcache_invariants(ro);
   1463   1.84     joerg 	}
   1464  1.105    dyoung }
   1465  1.105    dyoung 
   1466  1.144     ozaki static void
   1467  1.105    dyoung rtcache_clear(struct route *ro)
   1468  1.105    dyoung {
   1469  1.114    dyoung 	rtcache_invariants(ro);
   1470  1.105    dyoung 	if (ro->_ro_rt == NULL)
   1471  1.105    dyoung 		return;
   1472  1.105    dyoung 
   1473  1.105    dyoung 	LIST_REMOVE(ro, ro_rtcache_next);
   1474  1.105    dyoung 
   1475  1.131     rmind 	rtfree(ro->_ro_rt);
   1476  1.105    dyoung 	ro->_ro_rt = NULL;
   1477  1.114    dyoung 	ro->ro_invalid = false;
   1478  1.114    dyoung 	rtcache_invariants(ro);
   1479   1.83     joerg }
   1480   1.83     joerg 
   1481   1.90    dyoung struct rtentry *
   1482   1.91    dyoung rtcache_lookup2(struct route *ro, const struct sockaddr *dst, int clone,
   1483   1.91    dyoung     int *hitp)
   1484   1.90    dyoung {
   1485   1.90    dyoung 	const struct sockaddr *odst;
   1486  1.104    dyoung 	struct rtentry *rt = NULL;
   1487   1.90    dyoung 
   1488   1.90    dyoung 	odst = rtcache_getdst(ro);
   1489  1.138     ozaki 	if (odst == NULL)
   1490  1.138     ozaki 		goto miss;
   1491   1.90    dyoung 
   1492  1.138     ozaki 	if (sockaddr_cmp(odst, dst) != 0) {
   1493   1.90    dyoung 		rtcache_free(ro);
   1494  1.138     ozaki 		goto miss;
   1495  1.138     ozaki 	}
   1496  1.138     ozaki 
   1497  1.138     ozaki 	rt = rtcache_validate(ro);
   1498  1.138     ozaki 	if (rt == NULL) {
   1499   1.91    dyoung 		rtcache_clear(ro);
   1500  1.138     ozaki 		goto miss;
   1501  1.138     ozaki 	}
   1502  1.138     ozaki 
   1503  1.138     ozaki 	*hitp = 1;
   1504  1.138     ozaki 	rtcache_invariants(ro);
   1505   1.90    dyoung 
   1506  1.138     ozaki 	return rt;
   1507  1.138     ozaki miss:
   1508  1.138     ozaki 	*hitp = 0;
   1509  1.138     ozaki 	if (rtcache_setdst(ro, dst) == 0)
   1510  1.138     ozaki 		rt = _rtcache_init(ro, clone);
   1511   1.90    dyoung 
   1512  1.114    dyoung 	rtcache_invariants(ro);
   1513  1.114    dyoung 
   1514  1.104    dyoung 	return rt;
   1515   1.90    dyoung }
   1516   1.90    dyoung 
   1517   1.83     joerg void
   1518   1.86    dyoung rtcache_free(struct route *ro)
   1519   1.86    dyoung {
   1520   1.86    dyoung 	rtcache_clear(ro);
   1521   1.86    dyoung 	if (ro->ro_sa != NULL) {
   1522   1.86    dyoung 		sockaddr_free(ro->ro_sa);
   1523   1.86    dyoung 		ro->ro_sa = NULL;
   1524   1.86    dyoung 	}
   1525  1.114    dyoung 	rtcache_invariants(ro);
   1526   1.86    dyoung }
   1527   1.86    dyoung 
   1528   1.90    dyoung int
   1529   1.90    dyoung rtcache_setdst(struct route *ro, const struct sockaddr *sa)
   1530   1.83     joerg {
   1531   1.90    dyoung 	KASSERT(sa != NULL);
   1532   1.90    dyoung 
   1533  1.114    dyoung 	rtcache_invariants(ro);
   1534  1.142     ozaki 	if (ro->ro_sa != NULL) {
   1535  1.142     ozaki 		if (ro->ro_sa->sa_family == sa->sa_family) {
   1536  1.142     ozaki 			rtcache_clear(ro);
   1537  1.142     ozaki 			sockaddr_copy(ro->ro_sa, ro->ro_sa->sa_len, sa);
   1538  1.143     ozaki 			rtcache_invariants(ro);
   1539  1.143     ozaki 			return 0;
   1540  1.114    dyoung 		}
   1541  1.143     ozaki 		/* free ro_sa, wrong family */
   1542  1.143     ozaki 		rtcache_free(ro);
   1543  1.142     ozaki 	}
   1544   1.90    dyoung 
   1545  1.107    dyoung 	KASSERT(ro->_ro_rt == NULL);
   1546  1.107    dyoung 
   1547  1.134  christos 	if ((ro->ro_sa = sockaddr_dup(sa, M_ZERO | M_NOWAIT)) == NULL) {
   1548  1.114    dyoung 		rtcache_invariants(ro);
   1549   1.90    dyoung 		return ENOMEM;
   1550  1.107    dyoung 	}
   1551  1.114    dyoung 	rtcache_invariants(ro);
   1552   1.90    dyoung 	return 0;
   1553   1.83     joerg }
   1554   1.92    dyoung 
   1555  1.123    kefren const struct sockaddr *
   1556  1.123    kefren rt_settag(struct rtentry *rt, const struct sockaddr *tag)
   1557  1.123    kefren {
   1558  1.123    kefren 	if (rt->rt_tag != tag) {
   1559  1.123    kefren 		if (rt->rt_tag != NULL)
   1560  1.123    kefren 			sockaddr_free(rt->rt_tag);
   1561  1.134  christos 		rt->rt_tag = sockaddr_dup(tag, M_ZERO | M_NOWAIT);
   1562  1.123    kefren 	}
   1563  1.123    kefren 	return rt->rt_tag;
   1564  1.123    kefren }
   1565  1.123    kefren 
   1566  1.123    kefren struct sockaddr *
   1567  1.123    kefren rt_gettag(struct rtentry *rt)
   1568  1.123    kefren {
   1569  1.123    kefren 	return rt->rt_tag;
   1570  1.123    kefren }
   1571